<div><p>We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in cardiac muscle. Calcium mediates cardiac contraction through its interactions with troponin (<i>Tn</i>) and subsequently tropomyosin molecules. Experimental studies have shown that a slight increase in intracellular calcium concentration leads to a rapid increase in sarcomeric tension. Though it is widely accepted that the rapid increase is not possible without the concept of cooperativity, the mechanism is debated. We use the hypothesis that there exists a base level of cooperativity intrinsic to the thin filament that is boosted by mechanical tension, i.e. a high level of mechanical tension in the thin filament impedes the unbinding ...
<div><p>Biophysical models of cardiac tension development provide a succinct representation of our u...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
AbstractWe present a model of Ca-regulated thin filaments in cardiac muscle where tropomyosin is tre...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
A mathematical model for the regulation of mechanical activity in cardiac muscle has been developed ...
AbstractWe present a model of Ca-regulated thin filaments in cardiac muscle where tropomyosin is tre...
The determinants of relaxation in cardiac muscle are poorly understood, yet compromised relaxation a...
<div><p>Biophysical models of cardiac tension development provide a succinct representation of our u...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
AbstractWe present a model of Ca-regulated thin filaments in cardiac muscle where tropomyosin is tre...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
We developed a model of cardiac sarcomere contraction to study the calcium-tension relationship in c...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
Experiments have shown that the relaxation phase of cardiac sarcomeres during an isometric twitch is...
A mathematical model for the regulation of mechanical activity in cardiac muscle has been developed ...
AbstractWe present a model of Ca-regulated thin filaments in cardiac muscle where tropomyosin is tre...
The determinants of relaxation in cardiac muscle are poorly understood, yet compromised relaxation a...
<div><p>Biophysical models of cardiac tension development provide a succinct representation of our u...
AbstractThe determinants of relaxation in cardiac muscle are poorly understood, yet compromised rela...
AbstractWe present a model of Ca-regulated thin filaments in cardiac muscle where tropomyosin is tre...